1 // SPDX-License-Identifier: GPL-2.0
3 * Thunderbolt driver - capabilities lookup
5 * Copyright (c) 2014 Andreas Noever <andreas.noever@gmail.com>
6 * Copyright (C) 2018, Intel Corporation
9 #include <linux/slab.h>
10 #include <linux/errno.h>
14 #define CAP_OFFSET_MAX 0xff
15 #define VSE_CAP_OFFSET_MAX 0xffff
16 #define TMU_ACCESS_EN BIT(20)
20 struct tb_cap_basic basic;
21 struct tb_cap_extended_short extended_short;
22 struct tb_cap_extended_long extended_long;
26 static int tb_port_enable_tmu(struct tb_port *port, bool enable)
28 struct tb_switch *sw = port->sw;
33 * Legacy devices need to have TMU access enabled before port
34 * space can be fully accessed.
36 if (tb_switch_is_lr(sw))
38 else if (tb_switch_is_er(sw))
43 ret = tb_sw_read(sw, &value, TB_CFG_SWITCH, offset, 1);
48 value |= TMU_ACCESS_EN;
50 value &= ~TMU_ACCESS_EN;
52 return tb_sw_write(sw, &value, TB_CFG_SWITCH, offset, 1);
55 static void tb_port_dummy_read(struct tb_port *port)
58 * When reading from next capability pointer location in port
59 * config space the read data is not cleared on LR. To avoid
60 * reading stale data on next read perform one dummy read after
61 * port capabilities are walked.
63 if (tb_switch_is_lr(port->sw)) {
66 tb_port_read(port, &dummy, TB_CFG_PORT, 0, 1);
70 static int __tb_port_find_cap(struct tb_port *port, enum tb_port_cap cap)
75 struct tb_cap_any header;
78 ret = tb_port_read(port, &header, TB_CFG_PORT, offset, 1);
82 if (header.basic.cap == cap)
85 offset = header.basic.next;
92 * tb_port_find_cap() - Find port capability
93 * @port: Port to find the capability for
94 * @cap: Capability to look
96 * Returns offset to start of capability or %-ENOENT if no such
97 * capability was found. Negative errno is returned if there was an
100 int tb_port_find_cap(struct tb_port *port, enum tb_port_cap cap)
104 ret = tb_port_enable_tmu(port, true);
108 ret = __tb_port_find_cap(port, cap);
110 tb_port_dummy_read(port);
111 tb_port_enable_tmu(port, false);
116 static int tb_switch_find_cap(struct tb_switch *sw, enum tb_switch_cap cap)
118 int offset = sw->config.first_cap_offset;
120 while (offset > 0 && offset < CAP_OFFSET_MAX) {
121 struct tb_cap_any header;
124 ret = tb_sw_read(sw, &header, TB_CFG_SWITCH, offset, 1);
128 if (header.basic.cap == cap)
131 offset = header.basic.next;
138 * tb_switch_find_vse_cap() - Find switch vendor specific capability
139 * @sw: Switch to find the capability for
140 * @vsec: Vendor specific capability to look
142 * Functions enumerates vendor specific capabilities (VSEC) of a switch
143 * and returns offset when capability matching @vsec is found. If no
144 * such capability is found returns %-ENOENT. In case of error returns
147 int tb_switch_find_vse_cap(struct tb_switch *sw, enum tb_switch_vse_cap vsec)
149 struct tb_cap_any header;
152 offset = tb_switch_find_cap(sw, TB_SWITCH_CAP_VSE);
156 while (offset > 0 && offset < VSE_CAP_OFFSET_MAX) {
159 ret = tb_sw_read(sw, &header, TB_CFG_SWITCH, offset, 2);
164 * Extended vendor specific capabilities come in two
165 * flavors: short and long. The latter is used when
166 * offset is over 0xff.
168 if (offset >= CAP_OFFSET_MAX) {
169 if (header.extended_long.vsec_id == vsec)
171 offset = header.extended_long.next;
173 if (header.extended_short.vsec_id == vsec)
175 if (!header.extended_short.length)
177 offset = header.extended_short.next;